Key result
Mutation of a highly conserved tryptophan (W42A) in the adiponectin hyper-variable domain traps adiponectin in trimeric or hexameric states, reducing AMPK activation in endothelial cells.
A highly conserved tryptophan (W42) in the adiponectin hyper-variable domain is critical for the proper oxidation and assembly of high molecular weight adiponectin, which is required for its downstream signaling activation.
Should not yet alter clinical practice; hypothesis-generating for adiponectin oligomerization in endothelial signaling.
Adiponectin is a collagenous adipokine with direct anti‐diabetic and anti‐atherogenic properties. It can assume an ensemble of oligomeric states, e.g. trimers, hexamers and octadecamers, each being involved in distinct signaling pathways relevant to adiponectin’s diverse biological function in metabolism, immunity, inflammation and cellular homeostasis. Assembly of the active variants principally the octadecameric high molecular weight form is achieved via the tightly controlled oxidation of cysteine 39 located in the adiponectin hyper‐variable domain (AHD, residues 18–44) between the signal sequence and the collagen‐like domain. We show that mutation of a highly conserved tryptophan (W42A) in the AHD profoundly affects assembly by trapping full‐length adiponectin in the oxidized trimeric or hexameric states with a concomitant major reduction in the high molecular weight form. Our biophysical measurements on synthesized analogues of the AHD suggests that the aberrant oligomer distribution can be explained based on the fact that the proximity of W42 to C39 causes a reduction in the rate of C39 oxidation, an effect that to our knowledge has not been documented before. At the biological level, the perturbed oligomer distribution of full‐length mutant adiponectin leads to a major reduction in the AMP‐activated protein kinase activation in endothelial cells and liver tissues. Structured digital abstract Adiponectin and Adiponectin bind by molecularsieving ( Viewinteraction ) Adiponectin and Adiponectin bind by molecularsieving (View Interaction: 1 , 2 , 3 , 4 ) Adiponectin and Adiponectin bind by cosedimentation in solution ( View interaction ) Adiponectin physically interacts with ERP44 and DsbA‐L by anti tag coimmunoprecipitation ( View interaction ) Adiponectin and Adiponectin bind by nuclear magnetic resonance ( View interaction ) Adiponectin and Adiponectin bind by transmission electron microscopy ( View interaction )
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Radjainia et al. (2012) studied this question. W42A mutation in adiponectin hyper-variable domain was evaluated on Oligomeric assembly and AMP-activated protein kinase activation. Mutation of a highly conserved tryptophan (W42A) in the adiponectin hyper-variable domain traps adiponectin in trimeric or hexameric states, reducing AMPK activation in endothelial cells.
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